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High-Content Screening Assay for the Identification of Antibody-Dependent Cellular Cytotoxicity Modifying Compounds
Published on: August 18, 2023
High-Content Screening Assay for the Identification of Antibody-Dependent Cellular Cytotoxicity Modifying Compounds
Eliza Guti1, Ákos Máté Bede2, Csongor Váróczy2
1Department of Medical Chemistry, Faculty of Medicine, University of Debrecen; Doctoral School of Molecular Medicine, University of Debrecen.
Abstract:
Immunotherapy with antigen-specific antibodies or immune checkpoint inhibitors has revolutionized the therapy of breast cancer. Breast cancer cells expressing the epidermal growth factor receptor HER2 can be targeted by the anti-HER-2 antibody trastuzumab. Antibody-dependent cellular cytotoxicity (ADCC) is an important mechanism implicated in the antitumor action of HER-2. Trastuzumab bound to cancer cells can be recognized by the Fc receptors of ADCC effector cells (e.g., natural killer (NK) cells, macrophages, and granulocytes), triggering the cytotoxic activity of these immune cells leading to cancer cell death. We set out to develop an image-based assay for the quantification of ADCC to identify novel ADCC modulator compounds by high-content screening. In the assay, HER2 overexpressing JIMT-1 breast cancer cells are co-cultured with NK-92 cells in the presence of trastuzumab, and target cell death is quantified by automated microscopy and quantitative image analysis. Target cells are distinguished from effector cells based on their EGFP fluorescence. We show how compound libraries can be tested in the assay to identify ADCC modulator drugs. For this purpose, a compound library test plate was set up using randomly selected fine chemicals off the lab shelf. Three microtubule destabilizing compounds (colchicine, vincristine, podophyllotoxin) expected to interfere with NK cell migration and degranulation were also included in the test library. The test screen identified all three positive control compounds as hits proving the suitability of the method to identify ADCC-modifying drugs in a chemical library. With this assay, compound library screens can be performed to identify ADCC-enhancing compounds that could be used as adjuvant therapeutic agents for the treatment of patients receiving anticancer immunotherapies. In addition, the method can also be used to identify any undesirable ADCC-inhibiting side effects of therapeutic drugs taken by cancer patients for different indications.
Insights
We developed a new assay to screen for compounds that enhance antibody-dependent cellular cytotoxicity (ADCC) in breast cancer immunotherapy. This method identifies potential new drugs to improve cancer treatment by boosting immune cell activity against tumors.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Immunotherapy, including antigen-specific antibodies and immune checkpoint inhibitors, has transformed breast cancer treatment.
- The anti-HER2 antibody trastuzumab targets HER2-expressing breast cancer cells, with antibody-dependent cellular cytotoxicity (ADCC) being a key antitumor mechanism.
- ADCC involves immune effector cells recognizing antibody-bound cancer cells, leading to cancer cell death.
Purpose of the Study:
- To develop an image-based assay for quantifying ADCC.
- To identify novel ADCC modulator compounds using high-content screening.
- To evaluate the assay's suitability for screening compound libraries for ADCC-modifying drugs.
Main Methods:
- Co-culture of HER2-overexpressing JIMT-1 breast cancer cells with NK-92 cells in the presence of trastuzumab.
- Automated microscopy and quantitative image analysis to measure target cell death.
- Distinguishing target from effector cells using EGFP fluorescence.
Main Results:
- The assay successfully quantified ADCC.
- Screening of a compound library identified three known microtubule destabilizing agents (colchicine, vincristine, podophyllotoxin) as ADCC modulators.
- Positive control compounds confirmed the assay's ability to detect ADCC-modifying drugs.
Conclusions:
- The developed image-based assay is suitable for high-content screening of compound libraries to identify ADCC modulators.
- This assay can discover ADCC-enhancing compounds for use as adjuvant therapy in breast cancer immunotherapy.
- The method can also identify drugs with undesirable ADCC-inhibiting side effects.
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